Technical Field
[0001] The present specification relates to a head mounted display, and more particularly,
to a head mounted display activating or inactivating an audio input/output unit and
a display unit according to a mode.
Background Art
[0002] As a head mounted display has been lightened, users can wear the head mounted display
like glasses. Users can perform a voice call or a video call using the head mounted
display. Since it is difficult for the head mounted display to be equipped with various
buttons on the surface of the head mounted display, the head mounted display may have
low operability due to an attribute of the device.
[0003] U.S. Patent Application Publication No. 2004/104864 A1 discloses a glasses-type display connected to an information communication terminal
via a wire line or a wireless line. The glasses type display includes lenses, a main
frame, side frames, a microphone, speakers, open and closed state detecting sensors,
and wearing state detecting sensors. When the user opens the side frames, the open
and closed state detecting sensors react and the wearing state detecting sensors are
turned into the on state.
Disclosure of Invention
Technical Problem
[0004] Hence, in case of performing a voice call or a video call using the head mounted
display, a method of providing an additional function via a simple operation is required.
For instance, in case of performing a voice call or a video call, a method of controlling
the head mounted display not to deliver a voice of a user to the other party with
a simple operation only is required.
Solution to Problem
[0005] Accordingly, the present specification is directed to an apparatus and method thereof
that substantially obviate one or more problems due to limitations and disadvantages
of the related art.
[0006] An object of the present specification is to provide a head mounted display activating
or inactivating an audio input/output unit or a display unit according to a mode of
wearing. In particular, according to the present specification, it is necessary for
the head mounted display to provide a method of distinguishing the mode using a sensor
unit and a method of activating or inactivating at least one selected from the group
consisting of an audio input unit, an audio output unit, and a display unit according
to the mode.
[0007] Additional advantages, objects, and features of the invention will be set forth in
part in the description which follows and in part will become apparent to those having
ordinary skill in the art upon examination of the following or may be learned from
practice of the invention. The objectives and other advantages of the invention may
be realized and attained by the structure particularly pointed out in the written
description
and claims hereof as well as the appended drawings; whereby the invention is defined
by the appended claims.
[0008] To achieve these objects and other advantages and in accordance with the purpose
of the invention, as embodied and broadly described herein, according to one embodiment,
a head mounted display (HMD) includes the features of claim 1. A head mounted display
(HMD) may include: a display unit configured to display a digital image, an audio
input unit configured to receive an audio signal and configured to convert the audio
signal to an electric signal, a first sensor configured to detect a first contact
in a manner of being positioned at a nose pad of the HMD, a second sensor configured
to detect a second contact in a manner of being positioned at a temple of the HMD,
and a controller configured to control the display unit, the audio input unit, the
first sensor, and the second sensor, if the first contact and the second contact are
detected, the controller configured to activate a wearing mode, if the first contact
is not detected and the second contact is detected, the controller configured to activate
a mute mode, if the first contact and the second contact are not detected, the controller
configured to activate a non-wearing mode, if the first contact is not detected in
the wearing mode, the controller configured to switch the wearing mode to the mute
mode, if the first contact is detected in the mute mode, the controller configured
to switch the mute mode to the wearing mode, if the second contact is not detected
in the mute mode, the controller configured to switch the mute mode to the non-wearing
mode, if the first contact and the second contact are detected in the non-wearing
mode, the controller configured to switch the non-wearing mode to the wearing mode.
[0009] To achieve these and other advantages and in accordance with the purpose of the present
specification, as embodied and broadly described, according to one embodiment, a method
of controlling a head mounted display (HMD) includes the steps of claim 14. A method
of controlling a head mounted display (HMD) may include the steps of: detecting a
first contact contacted with a nose pad of the HMD, detecting a second contact contacted
with a temple of the HMD, if the first contact and the second contact are detected,
operating in a wearing mode to activate a display unit and an audio input unit, if
the first contact is not detected and the second contact is detected, operating in
a mute mode to activate the display unit and inactivate the audio input unit, and
if the first contact and the second contact are not detected, operating in a non-wearing
mode to inactivate the display unit and the audio input unit, wherein if the first
contact is not detected in the wearing mode, the method switches the wearing mode
to the mute mode, wherein if the first contact is detected in the mute mode, the method
switches the mute mode to the wearing mode, wherein if the second contact is not detected
in the mute mode, the method switches the mute mode to the non-wearing mode, wherein
if the first contact and the second contact are detected in the non-wearing mode,
the method switches the non-wearing mode to the wearing mode.
[0010] It is to be understood that both the foregoing general description and the following
detailed description of the present specification are exemplary and explanatory and
are intended to provide further explanation of the invention as claimed.
Advantageous Effects of Invention
[0011] According to the present specification, a head mounted display can switch a mode
of the head mounted display according to a detected result of a sensor unit.
[0012] According to the present specification, a head mounted display can detect a contact
contacted by a nose of a user using a first sensor situated at a nose pad.
[0013] According to the present specification, a head mounted display can determine whether
an audio input unit is activated depending on whether a contact is detected by a first
sensor situated at a nose pad.
[0014] According to the present specification, a head mounted display can determine whether
a camera unit is activated depending on whether a gaze of a user is detected.
[0015] According to the present specification, if a contact is not detected by a first sensor
situated at a nose pad, a head mounted display can inactivate at least one selected
from the group consisting of an audio input unit, an audio output unit, and a display
unit according to a result detected by a second sensor situated at a temple.
[0016] According to the present specification, a head mounted display can toggle whether
an audio input unit is activated according to a result detected by a third sensor
situated at a bridge.
Brief Description of Drawings
[0017] The accompanying drawings, which are included to provide a further understanding
of the invention and are incorporated in and constitute a part of this application,
illustrate embodiment(s) of the invention and together with the description serve
to explain the principle of the invention. In the drawings:
FIG. 1 is a diagram of a head mounted display (HMD) according to one embodiment of
the present specification;
FIG. 2 is a diagram of a method for switching a mode of an HMD according to one embodiment
of the present specification;
FIG. 3 is a diagram for an operating method according to a mode of an HMD according
to one embodiment of the present specification;
FIG. 4 is a diagram for an operating method of a mute mode of an HMD according to
one embodiment of the present specification;
FIG. 5 is a diagram for an operating method of a mute mode of an HMD according to
a different embodiment of the present specification;
FIG. 6 is a block diagram of an HMD according to one embodiment of the present specification;
FIG. 7 is a flowchart for a telephone call operation of an HMD according to one embodiment
of the present specification;
FIG. 8 is a flowchart for a video capturing according to one embodiment of the present
specification;
FIG. 9 is a flowchart for a video capturing according to a different embodiment of
the present specification.
Best Mode for Carrying out the Invention
[0018] While the embodiments have been concretely described with reference to the attached
diagrams and the contents written on the diagrams, a scope of claims may be non-restricted
or non-limited to the embodiments.
[0019] Although terminologies used in the present specification are selected from general
terminologies used currently and widely in consideration of functions, they may be
changed in accordance with intentions of technicians engaged in the corresponding
fields, customs, advents of new technologies and the like. Occasionally, some terminologies
may be arbitrarily selected by the applicant(s). In this case, the meanings of the
arbitrarily selected terminologies shall be described in the corresponding part of
the detailed description of the specification. Therefore, terminologies used in the
present specification need to be construed based on the substantial meanings of the
corresponding terminologies and the overall matters disclosed in the present specification
rather than construed as simple names of the terminologies.
[0020] In the present specification, a head mounted display may include a wearable device
capable of displaying visual information in a manner of being worn on a body of a
user.
[0021] FIG. 1 is a diagram of a head mounted display (HMD) according to one embodiment of
the present specification. Referring to FIG. 1, a head mounted display (hereinafter
abbreviated HMD) can be divided into a plurality of parts. Referring to FIG. 1, the
HMD 10 can include a display part 11, a temple part 12, a bridge part 13, and a nose
pad part 14. The display part 11 displays a digital image and can provide visual information
to a user. As depicted in FIG. 1, the display part 11 may have such a form as a rim
of glasses. The display part 11 can include a display unit configured to project/
display the visual information. According to a different embodiment, the display part
may include a display unit and a frame supporting the display unit except the rim.
The temple part 12 can fix the HMD 10 on a head of a user. The temple part 12 can
include an audio input unit and an audio output unit. In particular, the temple part
12 can include an ear piece adjacent to an ear of a user and the audio output unit
can be positioned at the ear piece. The bridge part 13 can be positioned between a
left display part 11 and a right display part 11. The bridge part plays a role of
connecting the left part and the right part of the HMD 10. The nose pad part 14 can
support the HMD in a manner of being contacted with a nose of a user in order for
the HMD 10 not to fall.
[0022] The HMD 10 can include a sensor unit configured to sense a state of being worn by
the HMD of a user. The HMD 10 can sense a state of being worn by the HMD of a user
using at least one selected from the group consisting of a proximity sensor, a touch
sensor, an infrared sensor, and an image sensor. In FIG. 1, a position of the sensor
included in the HMD 10 is represented by a circle. The HMD 10 can include a first
sensor 15 in the nose pad part 14. The HMD 10 can sense whether the nose pad part
14 is contacted with a nose of a user using the first sensor 15. In the present specification,
a contact between the nose pad part 14 of the HMD and a nose of a user can be defined
as a first contact.
[0023] In a state of being worn by the HMD, if a user lifts up the display part 11, the
nose pad part 14 can be separated from a nose of the user. In this case, the first
sensor 15 can sense that the nose pad part 14 is no longer contacted with the nose
of the user. The HMD 10 can determine whether at least one selected from the group
consisting of an audio input unit, an audio output unit, and a display unit is activated
using the sensed information. Regarding this, it shall be described in detail in FIG.
3 to FIG. 5.
[0024] The HMD 10 can include a second sensor 16 in the temple part 12. The HMD can include
the second sensor 16 in an area where a head of a user is contacted with the temple
part 12. In particular, the second sensor 16 can be positioned next to an audio output
unit positioned at an ear piece of the temple part.
[0025] The temple part 12 of the HMD can include a left temple and a right temple. The HMD
can include the second sensors 16 in the left temple and the right temple, respectively.
The HMD can sense whether the temple part 12 is contacted with a head of a user using
the second sensor 16. In the present specification, a contact between the temple part
of the HMD and a head of a user can be defined as a second contact.
[0026] In a state of being worn by the HMD, if a user lifts up the display part 11, the
second sensor 16 can still maintain a contact with a head of a user. When the contact
is respectively detected by the second sensor positioned at the left temple and the
second sensor positioned at the right temple, the HMD 10 can determine that the second
contact is detected.
[0027] When a user takes off the HMD, the second sensor 16 of the HMD can release a contact
with a head of the user. The HMD 10 can determine whether at least one selected from
the group consisting of an audio input unit, an audio output unit, and a display unit
is activated using sensed information.
[0028] The HMD 10 can distinguish a state of being worn by the HMD, a state that a glass
part is lifted, and a state that the HMD is taken off using a result sensed by the
first sensor 15 and the second sensor 16. A mode switching of the HMD according to
a state of being worn by the HMD is described in detail in FIG. 2.
[0029] The HMD 10 can include a third sensor 17 in the display part 11 or the temple part
12. The HMD 10 can include the third sensor 17 in a position adjacent to the display
part 11 among the temple part 12. The HMD 10 can judge whether a gaze of a user faces
a display area of the HMD using the third sensor 17. The HMD 10 detects a gaze of
a user and can judge whether the user is able to gaze into visual information displayed
by the HMD. If a position of eyes of a user or a position of a gaze of a user corresponds
to a position incapable of looking at the visual information displayed by the display
unit, the HMD 10 can judge that the gaze of the user does not gaze into the display
area of the HMD. The third sensor 17 can be positioned at the display part 11 or the
temple part 12 of the HMD.
[0030] The HMD 10 can use a result sensed by using the third sensor in addition to a result
sensed by using the first sensor 15 and the second sensor 16. By doing so, the HMD
10 can determine whether the display unit is to be inactivated in a state that a glass
part is lifted. Regarding this, it shall be described in detail in FIG. 3.
[0031] The HMD 10 can include a fourth sensor in the temple part 12 except the second sensor
16 and the third sensor 17. The HMD 10 can detect a touch of a user on the temple
part 12. When the HMD is separated from a nose of a user, the HMD 10 can determine
which one among an audio input unit, an audio output unit, and a display unit is to
be inactivated using a sensed result of the first sensor and a sensed result of the
fourth sensor. Regarding this, it shall be described in detail in FIG. 4 to FIG. 5.
[0032] The HMD 10 can include a fifth sensor in the bridge part 11. If a contact is detected
by the fifth sensor, the HMD 10 can toggle whether an audio input unit is activated.
Regarding this, it shall be described in detail in FIG. 5.
[0033] FIG. 2 is a diagram of a method for switching a mode of an HMD according to one embodiment
of the present specification. The HMD can operate in a mode among a wearing mode 20,
a mute mode 21, and a non-wearing mode 22. Although it is not depicted in FIG. 2,
the HMD may operate in the mute mode and a display off mode. The HMD can activate
an audio input unit, an audio output unit, and a display unit in the wearing mode
20. A user wearing the HMD in the wearing mode inputs/outputs auditory information
using the audio input unit and the audio output unit and can check visual information
using the display unit.
[0034] The HMD can inactivate the audio input unit in the mute mode 21. A user wearing the
HMD in the mute mode may not deliver a voice of the user to the other party using
the HMD of which the audio input unit is inactivated in the middle of a voice call.
And, in case of capturing a video including a video information and an audio information,
a user selectively stores the video information using the mute mode and can exclude
the audio information from a target of storing.
[0035] The HMD can inactivate the audio input unit and the display unit in the mute mode
and the display off mode. By inactivating the display unit, the HMD can obtain a power
saving effect. By inactivating the audio input unit, the HMD can restrict a voice
of a user or a sound inputted to the HMD. In the mute mode and the display off mode,
the HMD can output the audio information using the audio output unit and a user can
receive the audio information.
[0036] The HMD can inactivate the audio input unit, the audio output unit, and the display
unit in the non-wearing mode 22. The HMD in the non-wearing mode may not output the
video information and the audio information, thereby reducing power consumption. The
HMD in the non-wearing mode can terminate a pairing with an external device paired
with the HMD. If a user wears the HMD after a pairing between the HMD and a cellular
phone is terminated, the HMD can switch to the wearing mode, the mute mode, or the
mute and display off mode according to a result sensed by the first sensor, the second
sensor, and the third sensor. In this case, the HMD can provide a telephone call via
the HMD to a user in a manner of resuming the pairing with the cellular phone.
[0037] The HMD can switch a mode of the HMD according to results sensed by at least two
sensors among the first sensor, the second sensor, and the third sensor. As depicted
in FIG. 2, if a first contact is detected by the first sensor positioned at the nose
pad and a second contact is detected by the second sensor positioned at the temple,
the HMD can operate in the wearing mode. In this case, the first contact may correspond
to a contact between the nose pad of the HMD and a nose of a user and the second contact
may correspond to a contact between the temple of the HMD and a side of a face of
a user.
[0038] For instance, when a user makes a call using the HMD, the HMD can deliver a voice
signal of the user to the other party in a manner of activating the audio input unit.
And, the HMD can display visual information in a manner of activating the display
unit. In this case, the visual information can include such information on the other
party of the telephone call as a face of the other party, a telephone number, and
the like.
[0039] As a different embodiment, when a user captures a video using the HMD, the HMD can
store the video information detected by the camera unit and the audio information
inputted to the audio input unit.
[0040] In the wearing mode of the HMD, if the nose pad is separated from a nose of a user
and the first contact is not detected, the HMD can switch the wearing mode to the
mute mode. The mute mode may mean a mode that the HMD does not recognize voice information
of the user wearing the HMD or a mode that the HMD bypasses the voice information
of the user wearing the HMD.
[0041] For instance, when a user makes a call using the HMD, the HMD can restrict a voice
signal of the user to be delivered to the other party in a manner of inactivating
the audio input unit. When the user mentions private content, content not intended
to be delivered to the other party, or content irrelevant to the telephone call, the
mute mode can be used. Unlike the inactivated audio input unit, the HMD can display
visual information in a manner of activating the display unit. In this case, the visual
information can include such information on the other party of the telephone call
as a face of the other party, a telephone number, and the like. And, the HMD can deliver
a voice of the other party to the user in a manner of maintaining the activated state
of the audio output unit.
[0042] As a different embodiment, when a user captures a video using the HMD, the HMD selectively
stores the video information detected by the camera unit and can temporarily exclude
the audio information detected by the audio input unit from the video. In particular,
the HMD can store a video from which the audio information is eliminated in the mute
mode. When the first contact is detected by the first sensor, the HMD switches the
mute mode to the wearing mode and can resume storing the audio information.
[0043] In the wearing mode of the HMD, if the first contact and the second contact are not
detected because the nose pad is separated from a nose of a user and the temple is
separated from a head of the user, respectively, the HMD can switch the wearing mode
to the non-wearing mode.
[0044] For instance, when a user makes a call using the HMD, the HMD can terminate the call
with the other party. According to embodiment, if the HMD is paired with a cellular
phone, the HMD terminates the pairing and can grant a control authority to the cellular
phone to enable the user to make a call to the other party using the cellular phone.
[0045] As a different embodiment, when a user captures a video using the HMD, the HMD can
terminate the video capturing.
[0046] In the mute mode of the HMD, if the first contact is detected in a manner that the
nose pad is contacted with a nose of a user, the HMD can switch the mute mode to the
wearing mode.
[0047] In the mute mode of the HMD, if the second contact is not detected in a manner that
the temple is separated from a nose of a user, the HMD can switch the mute mode to
the non-wearing mode.
[0048] In the non-wearing mode of the HMD, if the second contact is detected in a manner
that the temple is contacted with a head of a user, the HMD can switch the non-wearing
mode to the mute mode.
[0049] In the non-wearing mode of the HMD, if the first contact and the second contact are
detected in a manner that the nose pad is contacted with a nose of a user and the
temple is contacted with a head of a user, respectively, the HMD can switch the non-wearing
mode to the wearing mode.
[0050] Moreover, if a gaze of a user is not detected in the mute mode of the HMD, the HMD
can switch the mute mode to the mute and the display off mode. In particular, if the
gaze of the user is not detected although the second contact is detected, the HMD
can inactivate the audio input unit and the display unit.
[0051] For instance, when a user makes a call using the HMD, the HMD can restrict a voice
signal of the user to be delivered to the other party in a manner of inactivating
the audio input unit. When the user mentions private content, content not intended
to be delivered to the other party, or content irrelevant to the telephone call, the
mute mode can be used. And, the HMD can stop displaying visual information in a manner
of inactivating the display unit. If eyes of a user are unable to check visual information
provided by the display unit, the HMD can inactivate the display unit to reduce unnecessary
power consumption. On the contrary, the HMD can deliver a voice of the other party
to the user in a manner of maintaining the activated state of the audio output unit.
[0052] As a different embodiment, when a user captures a video using the HMD, a video information
detected by a camera and an audio information detected by the audio input unit can
be temporarily excluded from the video. In particular, the HMD can temporarily stop
the video capturing in the mute and the display off mode.
[0053] When eyes or a gaze of a user is detected by the third sensor within the display
part, the HMD switches the mute and the display off mode to the mute mode and can
resume capturing the video information by the camera unit. And, when a contact between
the nose pad and a nose is detected by the first sensor, the HMD switches the mute
mode to the wearing mode and can resume recording the audio information in addition
to the video information capturing.
[0054] FIG. 3 is a diagram for an operating method according to a mode of an HMD according
to one embodiment of the present specification. The top left of FIG. 3 is a diagram
indicating a state of being worn by the HMD operating in the wearing mode. In case
that a user wears the HMD as shown in the top left of FIG. 3, the HMD 10 can detect
the first contact using the first sensor positioned at the nose pad part. And, the
HMD 10 can detect the second contact using the second sensor positioned at the temple
part.
[0055] Hence, the HMD can activate the wearing mode. The HMD 10 delivers a voice of a user
to the other party of a telephone call using the audio input unit and can output auditory
information using the audio output unit. And, the HMD 10 can provide visual information
to the user using the display unit.
[0056] The top right of FIG. 3 is a diagram indicating visual information 30 displayed by
the HMD operating in the wearing mode. In case of a video call in progress, the HMD
10 can display an image 31 of the other party of the video call. If a voice call is
in progress, the image 31 of the other party of the voice call is not displayed or
a substitute image may be displayed. The HMD 10 can display a first indicator 32 indicating
whether the audio output unit is activated in the wearing mode. The HMD 10 can inform
a user that the audio output unit is activated and auditory information is currently
outputted using the first indicator.
[0057] The HMD 10 can display a second indicator 33 indicating whether the audio input unit
is activated in the wearing mode. The HMD 10 can inform a user that the audio input
unit is activated and a voice of the user is currently delivered to the other party
of a telephone call in a manner of being inputted to the audio input unit using the
second indicator.
[0058] The middle left of FIG. 3 is a diagram indicating the HMD operating in the mute mode.
In case that a user wears the HMD as depicted in the middle left of FIG. 3, the HMD
10 can detect the second contact using the second sensor positioned at the temple
part. Yet, the HMD cannot detect the first contact using the first sensor positioned
at the nose pad part. This is because the nose pad part of the HMD is separated from
a nose of the user by the user.
[0059] Hence, the HMD 10 can activate the mute mode. The HMD 10 outputs auditory information
using the audio output unit and can provide visual information to the user using the
display unit. In particular, the HMD delivers a voice of the other party to the user
in a manner of outputting the voice of the other party and can display an image of
the other party of a telephone call. Yet, the HMD 10 inactivates the audio input unit
and may be then able to restrict a voice of the user to be delivered to the other
party of the telephone call.
[0060] The middle right of FIG. 3 is a diagram of visual information 30 displayed by the
HMD operating in the mute mode. In case of a video call in progress, the HMD 10 can
display an image 31 of the other party of the video call. If a voice call is in progress,
the image 31 of the other party of the voice call is not displayed or a substitute
image may be displayed. The HMD 10 can display a first indicator 32 indicating whether
the audio output unit is activated in the mute mode. The HMD 10 can inform a user
that the audio output unit is activated and auditory information is currently outputted
using the first indicator.
[0061] The HMD 10 can display a second indicator 33 indicating whether the audio input unit
is activated in the mute mode. The HMD 10 can inform a user that the audio input unit
is inactivated and a voice of the user is not currently delivered to the other party
of a telephone call using the second indicator.
[0062] The bottom left of FIG. 3 is a diagram indicating the HMD operating in the mute and
display off mode. If a user wears the HMD as depicted in the bottom left of FIG. 3,
the HMD 10 can detect the second contact using the second sensor positioned at the
temple part. Yet, the HMD cannot detect the first contact using the first sensor positioned
at the nose pad part. And, the HMD 10 cannot detect a gaze of the user using the third
sensor positioned at the display part or the temple part. This is because the nose
pad part of the HMD is separated from a nose of the user by the user and the display
part of the HMD deviated from a sight of the user.
[0063] Hence, the HMD 10 can activate the mute and display off mode. The HMD 10 can output
auditory information using the audio output unit. In particular, the HMD can deliver
a voice of the other party to a user in a manner of outputting the voice of the other
party. Yet, the HMD 10 inactivates the display unit and may be then able to restrict
visual information to be provided to the user. By doing so, the HMD 10 may obtain
a power saving effect. And, the HMD 10 inactivates the audio input unit and may be
then able to restrict a voice of the user to be delivered to the other party of a
telephone call.
[0064] The bottom right of FIG. 3 is a diagram indicating visual information 30 displayed
by the HMD operating in the mute and display off mode. In the mute and display off
mode, the HMD 10 may not display an image of the other party of a telephone call not
only in a voice call but also in a video call. And, the HMD may not display the first
indicator indicating whether the audio output unit is activated and the second indicator
indicating whether the audio input unit is activated. In particular, the HMD 10 may
not deliver visual information in a manner of inactivating the display mode in the
mute and display off mode of which a gaze of a user is not detected. By doing so,
it may obtain a power saving effect.
[0065] FIG. 4 is a diagram for an operating method of a mute mode of an HMD according to
one embodiment of the present specification. The HMD 10 can sense a first contact
between a nose of a user and a nose pad part using the first sensor positioned at
the nose pad part. If the HMD 10 detects a release of the first contact, the HMD can
activate the mute mode. The HMD 10 can sense a fourth contact between a hand of a
user and a temple part using a fourth sensor positioned at the temple part. The HMD
10 can include the fourth sensors in a left temple and a right temple, respectively.
The HMD 10 can determine whether the audio input unit, the audio output unit, and
the display unit are inactivated according to a sensed result for the fourth contact
in the mute mode.
[0066] The top left of FIG. 4 is a diagram indicating a method of switching the HMD to the
mute mode in a manner that a user lifts up the HMD using a left hand. The HMD 10 can
detect a release of the first contact between a nose of the user and the nose pad
part using the first sensor positioned at the nose pad part. Since the first contact
is released, the HMD 10 can activate the mute mode.
[0067] Moreover, the HMD 10 can sense the fourth contact between a hand 41 of a user and
the temple part using the fourth sensor positioned at the left temple part. If the
fourth contact is detected together with the release of the first contact, the HMD
10 can inactivate the audio input unit in the mute mode. In the following description,
the mute mode of which the audio input unit is inactivated can be defined as a first
mute mode. The HMD 10 outputs auditory information using the audio output unit and
can provide visual information to a user using the display unit. In particular, the
HMD 10 delivers a voice of the other party to the user in a manner of outputting the
voice of the other party and can display an image of the other party of a telephone
call. Yet, the HMD 10 inactivates the audio input unit and may be then able to restrict
a voice of the user to be delivered to the other party of the telephone call.
[0068] The top right of FIG. 4 is a diagram of visual information 43 displayed by the HMD
operating in the first mute mode. In case of a video call in progress, the HMD 10
can display an image 44 of the other party of the video call. If a voice call is in
progress, the image 44 of the other party of the call is not displayed or a substitute
image may be displayed.
[0069] The HMD 10 can display a first indicator 45 indicating whether the audio output unit
is activated in the first mute mode. The HMD 10 can inform a user that the audio output
unit is activated and auditory information is currently outputted using the first
indicator in the first mute mode.
[0070] The HMD 10 can display a second indicator 46 indicating whether the audio input unit
is activated in the first mute mode. The HMD 10 can inform a user that the audio input
unit is inactivated and a voice of the user is not currently delivered to the other
party of a telephone call using the second indicator in the first mute mode.
[0071] The middle left of FIG. 4 is a diagram indicating a method of switching the HMD to
the mute mode in a manner that a user lifts up the HMD using a right hand. The HMD
10 can detect a release of the first contact between a nose of the user and the nose
pad part using the first sensor positioned at the nose pad part. Since the first contact
is released, the HMD 10 can activate the mute mode.
[0072] Moreover, the HMD 10 can sense the fourth contact between a hand 42 of a user and
the temple part using the fourth sensor positioned at the right temple part. If the
fourth contact is detected together with the release of the first contact, the HMD
10 can inactivate the audio input unit in the mute mode. And, the HMD 10 can additionally
inactivate the audio output unit. In particular, according to whether the fourth contact
of the user is detected on the left temple or the right temple, the HMD 10 can differently
determine whether the audio input unit is inactivated from whether the audio output
unit is inactivated. In the following description, the mute mode of which the audio
input unit and the audio output unit are inactivated can be defined as a second mute
mode.
[0073] The HMD 10 can provide visual information to a user using the display unit. In particular,
the HMD 10 can display an image of the other party of a telephone call. Yet, the HMD
10 inactivates the audio input unit and the audio output unit and may be then able
to restrict a voice of the user to be delivered to the other party of the call and
a voice of the other party of the call to be outputted.
[0074] The middle right of FIG. 4 is a diagram of visual information 43 displayed by the
HMD operating in the second mute mode. In case of a video call in progress, the HMD
10 can display an image 44 of the other party of the video call. If a voice call is
in progress, the image 44 of the other party of the call is not displayed or a substitute
image may be displayed.
[0075] The HMD 10 can display a first indicator 45 indicating whether the audio output unit
is activated in the second mute mode. The HMD 10 can inform a user that the audio
output unit is inactivated and auditory information is not currently outputted using
the first indicator in the second mute mode.
[0076] The HMD 10 can display a second indicator 46 indicating whether the audio input unit
is activated in the second mute mode. The HMD 10 can inform a user that the audio
input unit is inactivated and a voice of the user is not currently delivered to the
other party of a telephone call using the second indicator in the second mute mode.
[0077] The bottom left of FIG. 4 is a diagram indicating a method of switching the HMD to
the mute mode in a manner that a user lifts up the HMD using both hands. The HMD 10
can detect a release of the first contact between a nose of the user and the nose
pad part using the first sensor positioned at the nose pad part. Since the first contact
is released, the HMD 10 can activate the mute mode.
[0078] Moreover, the HMD 10 can sense the fourth contacts between hands 41/42 of a user
and the temple part using the fourth sensors positioned at the left and the right
temple part. If the fourth contacts are detected together with the release of the
first contact, the HMD 10 can inactivate the audio input unit in the mute mode. And,
the HMD 10 can additionally inactivate the audio output unit and the display unit.
In particular, according to whether the fourth contact of the user is detected on
either the left temple or the right temple or is detected on both temple parts, the
HMD 10 can differently determine whether the audio input unit, the audio output unit,
and the display unit are inactivated. In the following description, the mute mode
of which the audio input unit, the audio output unit, and the display unit are inactivated
can be defined as a third mute mode.
[0079] The HMD 10 inactivates the audio input unit and the audio output unit and may be
then able to restrict a voice of the user to be delivered to the other party of a
call and a voice of the other party of the call to be outputted. And, the HMD 10 inactivates
the display unit and may be then able to restrict visual information to be displayed.
[0080] The bottom right of FIG. 4 is a diagram of visual information 43 displayed by the
HMD operating in the third mute mode. The HMD 10 may not display an image of the other
party of a telephone call, which is used to be displayed in the first mute mode and
the second mute mode, the first indicator, and the second indicator. The HMD 10 can
obtain a power saving effect by inactivating the display unit.
[0081] As mentioned in the foregoing description, the HMD 10 can respectively determine
whether the audio input unit, the audio output unit, and the display unit are inactivated
depending on whether the hand lifted up the HMD corresponds to a left hand, a right
hand, or both hands. The above-mentioned embodiment is just one embodiment among many
embodiments and the method of inactivating each unit according to the hand of the
user lifted up the HMD can be differently applied according to embodiment.
[0082] FIG. 5 is a diagram for an operating method of a mute mode of an HMD according to
a different embodiment of the present specification. The HMD 10 can sense a first
contact between a nose of a user and the nose pad part using a first sensor positioned
at the nose pad part. If a release of the first contact is detected, the HMD 10 can
activate the mute mode. The HMD 10 can sense a fourth contact between a hand of a
user and the temple part using a fourth sensor positioned at the temple part. The
HMD 10 can sense a fifth contact between the hand of the user and the bridge part
using a fifth sensor positioned at the bridge part. The HMD 10 detects a release of
the first contact and can determine whether the audio input unit and the audio output
unit are inactivated according to whether the fourth contact or the fifth contact
is detected together with the first contact in the mute mode.
[0083] The top left of FIG. 5 is a diagram indicating a method of switching the HMD to the
mute mode in a manner that a user lifts up the HMD. The HMD 10 can detect a release
of the first contact between a nose of the user and the nose pad part using the first
sensor positioned at the nose pad part. Since the first contact is released, the HMD
10 can activate the mute mode.
[0084] Moreover, the HMD 10 can sense the fourth contact between a hand 41 of a user and
the temple part using the fourth sensor positioned at the left temple part. If the
fourth contact is detected together with the release of the first contact, the HMD
10 can inactivate the audio input unit and the audio output unit in the mute mode.
In particular, the HMD 10 can activate the second mute mode mentioned earlier in FIG.
4. The aforementioned fourth sensor can be installed in at least one of the left temple
part and the right temple part.
[0085] The HMD 10 operating in the second mute mode can provide visual information to a
user using the display unit. In particular, the HMD 10 can display an image of the
other party of a call. Yet, the HMD 10 inactivates the audio input unit and the audio
output unit and may be then able to restrict a voice of the user to be delivered to
the other party of the call and a voice of the other party of the call to be outputted.
[0086] The top right of FIG. 5 is a diagram of visual information 54 displayed by the HMD
operating in the second mute mode. In case of a video call in progress, the HMD 10
can display an image 57 of the other party of the video call. If a voice call is in
progress, the image 57 of the other party of the call is not displayed or a substitute
image may be displayed.
[0087] The HMD 10 can display a first indicator 55 indicating whether the audio output unit
is activated in the second mute mode. The HMD 10 can inform a user that the audio
output unit is inactivated and auditory information is not currently outputted using
the first indicator in the second mute mode.
[0088] The HMD 10 can display a second indicator 56 indicating whether the audio input unit
is activated in the second mute mode. The HMD 10 can inform a user that the audio
input unit is inactivated and a voice of the user is not currently delivered to the
other party of a telephone call using the second indicator in the second mute mode.
[0089] The middle left of FIG. 5 is a diagram indicating a method of switching the HMD to
the mute mode in a manner that a user lifts up the HMD. The HMD 10 can detect a release
of the first contact between a nose of the user and the nose pad part using a first
sensor positioned at the nose pad part. Since the first contact is released, the HMD
10 can activate the mute mode.
[0090] If a fourth contact between a hand 52 of the user and the temple part is not detected
by a fourth sensor positioned at the temple part, the HMD 10 can inactivate the audio
input unit in the mute mode. In particular, the HMD 10 can activate the first mute
mode mentioned earlier in FIG. 4.
[0091] The aforementioned fourth sensor can be positioned at the left temple part and the
right temple part. Hence, if a user lifts up the HMD without touching the temple part,
the fourth contact may be not detected and the HMD 10 can activate the first mute
mode.
[0092] The HMD 10 outputs auditory information using the audio output unit and can provide
visual information to a user using the display unit in the first mute mode. In particular,
the HMD 10 delivers a voice of the other party to the user in a manner of outputting
the voice of the other party and can display an image of the other party of a call.
Yet, the HMD 10 inactivates the audio input unit and may be then able to restrict
a voice of the user to be delivered to the other party of the call.
[0093] The middle right of FIG. 5 is a diagram of visual information 54 displayed by the
HMD operating in the first mute mode. In case of a video call in progress, the HMD
10 can display an image 57 of the other party of the video call. If a voice call is
in progress, the image 57 of the other party of the call is not displayed or a substitute
image may be displayed.
[0094] The HMD 10 can display a first indicator 55 indicating whether the audio output unit
is activated in the first mute mode. The HMD 10 can inform a user that the audio output
unit is activated and auditory information is currently outputted using the first
indicator in the first mute mode.
[0095] The HMD 10 can display a second indicator 56 indicating whether the audio input unit
is activated in the first mute mode. The HMD 10 can inform a user that the audio input
unit is inactivated and a voice of the user is not currently delivered to the other
party of a telephone call using the second indicator in the first mute mode.
[0096] The bottom left of FIG. 5 is a diagram indicating a method of toggling whether the
audio input unit is activated in a manner that a user lifts up the HMD. The HMD 10
can detect a fifth contact between a hand of a user and the bridge part using a fifth
sensor positioned at the bridge part. The HMD 10 can toggle the power of the audio
input unit whenever the fifth contact is detected. In particular, if the fifth contact
is detected, the HMD 10 inactivates the audio input unit. If the fifth contact is
detected again, the HMD can activate the audio input unit. By doing so, the HMD 10
can permit/restrict a voice of the user to be delivered to the other party.
[0097] The bottom right of FIG. 5 is a diagram of visual information 54 displayed by the
HMD toggling the audio input unit. In case of a video call in progress, the HMD 10
can display an image 57 of the other party of the video call. If a voice call is in
progress, the image 57 of the other party of the call is not displayed or a substitute
image may be displayed.
[0098] The HMD 10 can display a first indicator 55 indicating whether the audio output unit
is activated. The HMD 10 can inform a user that the audio output unit is activated
and auditory information is currently outputted using the first indicator in the first
mute mode.
[0099] The HMD 10 can display a second indicator 56 indicating whether the audio input unit
is activated. The HMD 10 can inform a user that the audio input unit is activated
and a voice of the user is delivered to the other party of the call or the HMD can
inform the user that the audio input unit is inactivated and a voice of the user is
not delivered to the other party of the call using the second indicator according
to a toggle for the power of the audio input unit.
[0100] FIG. 6 is a block diagram of an HMD according to one embodiment of the present specification.
The HMD can include a display unit 101, a sensor unit 102, an audio input unit 103
and a controller 105. According to embodiment, the HMD may further include at least
one of a camera unit 104 and an audio output unit.
[0101] The display unit 101 can display visual information. The display unit 101 can display
an image of the other party in case of performing a video call. And, the display unit
101 can display whether the audio input unit and the audio output unit are activated
using an indicator. The display unit 101 can include a first display unit and a second
display unit corresponding to a left eye and a right eye of a user, respectively.
And, the display unit can further include a projector.
[0102] The display unit 101 can include at least one selected from the group consisting
of an organic light-emitting diode (OLED), a liquid crystal display (LCD), an e-ink,
a projector, and a flexible display.
[0103] The sensor unit 102 can detect whether the HMD is worn. The sensor unit 102 can detect
a state of being worn by the HMD using at least one selected from the group consisting
of a contact sensor, a touch sensor, an image sensor, and a proximity sensor.
[0104] The sensor unit 102 can include a first sensor configured to detect a contact in
a manner of being positioned at the nose pad part and a second sensor configured to
detect a contact in a manner of being positioned at the temple part. And, the sensor
unit 102 can further include a third sensor configured to detect a gaze of a user
in a manner of being positioned at the temple part, a fourth sensor configured to
detect a contact contacted by a hand of a user in a manner of being positioned at
the temple part, and a fifth sensor configured to detect a contact in a manner of
being positioned at the bridge part. In this case, the HMD according to the present
specification can include the third, the fourth, and the fifth sensor as an optional
configuration element. According to embodiment, it may vary whether the third, the
fourth, and the fifth sensor are included.
[0105] The first sensor among the sensor unit 102 can detect a first contact between a nose
of a user, which is a target of a contact, and the nose pad part. If the nose of the
user is separated from the nose pad part, the first sensor can measure a first distance
between the nose of the user and the first sensor. The first sensor can deliver information
on the measured first distance to the controller 105. The controller 105 can control
a mute level according to the measured first distance. According to embodiment, the
HMD can further include an audio output unit. If the measured first distance is greater
than a first threshold, the controller 105 can inactivate the audio output unit. According
to embodiment, the HMD can further include a camera unit 104 configured to capture
a digital image. If the measured first distance is greater than a second threshold,
the controller can stop capturing a digital image. In this case, the first threshold
may be equal to the second threshold or less than the second threshold.
[0106] The sensor unit 102 can deliver information on results sensed by each of the aforementioned
sensors to the controller.
[0107] The audio input unit 103 can convert an audio signal to an electric signal. For instance,
in case that the HMD performs a video call or a voice call, the audio input unit 103
can deliver a voice of a user to the other party of the call in a manner of converting
the voice of the user to an electric signal. And, in case that the HMD captures a
video, the audio input unit 103 converts a sound to an electric signal and can store
the signal as an audio information.
[0108] The camera unit 104 can convert an optical signal to an electric signal. For instance,
in case that the HMD performs a video call or a voice call, the camera unit 104 converts
an image of a user to an electric signal and may be then able to deliver the signal
to the other party of the call. And, in case that the HMD captures a video, the camera
unit 104 converts an optical image of a target of capturing to an electric signal
and can store the signal as a video information. The camera unit can include an image
sensor using a charge coupled device (CCD) or a complementary metal-oxide semiconductor
(CMOS). The HMD according to the present specification can include the camera unit
as an optional configuration element. Hence, according to embodiment, the camera unit
may be not included in the HMD.
[0109] Although it is not depicted, the HMD may further include an audio output unit. The
audio output unit converts an electric signal to an audio signal and can output the
audio signal. For instance, in case that the HMD performs a video call or a voice
call, the audio output unit can deliver a voice of the other party of the call to
a user of the HMD in a manner of outputting the voice of the other party. The HMD
can include the audio output unit in the temple part. In particular, the HMD can include
the audio output unit in a position adjacent to an ear piece of the temple part.
[0110] The controller 105 can control the display unit 101, the audio input unit 103, the
camera unit 104, and the audio output unit using the information delivered from the
sensor unit 102. The controller 105 can receive information on a gaze and contacts
of a user from the sensor unit 102. As mentioned earlier in FIG. 2 to FIG. 3, the
controller 105 can switch a mode of the HMD based on the received information.
[0111] The controller 105 can switch the mode of the HMD according to results sensed by
at least two sensors among a first sensor, a second sensor, and a third sensor. If
a first contact is detected by the first sensor positioned at the nose pad and a second
contact is detected by the second sensor positioned at the temple, the controller
105 can activate a wearing mode of the HMD.
[0112] In the wearing mode of the HMD, if the first contact is not detected in a manner
that the nose pad is separated from a nose of a user, the controller 105 can switch
the wearing mode of the HMD to a mute mode. In the wearing mode of the HMD, if the
first contact and the second contact are not detected in a manner that the nose pad
is separated from a nose of a user and the temple is separated from a head of the
user, respectively, the controller 105 can switch the wearing mode of the HMD to a
non-wearing mode.
[0113] In the mute mode of the HMD, if the first contact is detected in a manner that the
nose pad is contacted with a nose of a user, the controller 105 can switch the mute
mode of the HMD to the wearing mode. And, in the mute mode of the HMD, if the second
contact is not detected in a manner that the temple is separated from a head of a
user, the controller 105 can switch the mute mode of the HMD to the non-wearing mode.
[0114] In the non-wearing mode of the HMD, if the second contact is detected in a manner
that the temple is contacted with a head of a user, the controller 105 can switch
the non-wearing mode of the HMD to the mute mode. In the non-wearing mode of the HMD,
if the first and the second contact are detected in a manner that the nose pad is
contacted with a nose of a user and the temple is contacted with a head of the user,
respectively, the controller 105 can switch the non-wearing mode of the HMD to the
wearing mode.
[0115] FIG. 6 is a block diagram according to one embodiment of the present specification.
Blocks represented as being separated are depicted for elements of the portable device
in a manner of being logically distinguished. Thus, the aforementioned elements of
the portable device may be equipped with a single chip or a plurality of chips according
to a design of the portable device.
[0116] FIG. 7 is a flowchart for a telephone call operation of an HMD according to one embodiment
of the present specification. The HMD can make a call [S10]. The HMD can perform a
voice call or a video call via such an external device as a paired cellular phone,
a smartphone, or the like. If a call is made, the HMD can detect a first contact and
a second contact sensed by a first sensor and a second sensor, respectively. The first
sensor of the HMD can be positioned at a nose pad part of the HMD and can sense whether
a nose of a user is contacted with the nose pad. The second sensor of the HMD can
be positioned at a temple part and can sense whether a head of the user is contacted
with the temple.
[0117] If the first contact and the second contact are detected by the first sensor and
the second sensor, respectively, the HMD can operate in a wearing mode [S20]. In the
wearing mode, the HMD can receive audio information and video information from a paired
cellular phone and output the audio information and the video information. The HMD
outputs the received audio information via an audio output unit and can output the
received video information via a display unit. And, the HMD can activate an audio
input unit. The HMD can receive a voice of a user wearing the HMD via the audio input
unit. The HMD can deliver the received voice of the user to the other party via an
external device.
[0118] The HMD can determine whether the first contact of the first sensor is released [S30].
The first sensor of the HMD can be positioned at the nose pad of the HMD and can sense
whether a nose of a user is contacted with the nose pad. If the first contact of the
first sensor is maintained, the HMD can maintain the wearing mode.
[0119] If the first contact of the first sensor is released, the HMD can switch the wearing
mode to a mute mode [S40]. The HMD can output the audio information and the video
information received from the other party in the mute mode as well. Unlike this, the
HMD can inactivate the audio input unit in the mute mode. Hence, the HMD may not deliver
a voice of a user to the other party of a call.
[0120] The HMD can determine whether the second contact of the second sensor is released
[S50]. The HMD can include the second sensor in the temple part of the HMD. The HMD
can sense whether a head of a user is contacted with the temple part of the HMD using
the second sensor. If the second contact of the second sensor is maintained, the HMD
can maintain the mute mode. In this case, if a contact of the first sensor is additionally
detected, the HMD may switch to the wearing mode.
[0121] If the second contact of the second sensor is released, the HMD can switch to the
non-wearing mode [S60]. In the non-wearing mode, the HMD can release a pairing paired
with an external device. Since a user is no longer wearing the HMD, the user can continuously
make a call using the external device. In particular, the HMD can grant a control
authority for making a call to the external device.
[0122] In addition to the flowchart, the HMD can determine whether a gaze is detected by
a third sensor in the mute mode. Operating steps for the third sensor explained in
the following description can be optionally included in the method of controlling
the HMD of the present specification according to embodiment.
[0123] The third sensor can be positioned at the temple part or the display part of the
HMD. The HMD can detect whether a user is able to check displayed video information
using the third sensor. If the user can check the displayed video information, the
HMD can maintain the mute mode. In particular, if a gaze of the user is detected by
the third sensor, the HMD can maintain the display unit in an activated state.
[0124] If the user is unable to check the displayed video information, i.e., if a gaze of
the user is not detected by the third sensor, the HMD can switch the mute mode to
a mute and display off mode. In the mute and display off mode, the HMD can inactivate
not only the audio input unit but also the display unit. In other word, if the user
is unable to check the displayed video information with a vision, displaying the video
information is meaningless and power consuming job. Hence, HMD inactivates the display
unit and can obtain a power saving effect.
[0125] FIG. 8 is a flowchart for a video capturing according to one embodiment of the present
specification. In case of capturing a video, the HMD can operate in three kinds of
mode. In the wearing mode, the HMD can store video information and audio information.
In the mute mode, the HMD can selectively store the video information except the audio
information. In the mute and display off mode, the HMD can temporarily stop capturing
a video.
[0126] The HMD can capture a video [S110]. When a video capturing is performed, the HMD
can detect a first contact and a second contact using a first sensor and a second
sensor, respectively. The first sensor of the HMD can be positioned at a nose pad
part of the HMD and can sense whether a nose of a user is contacted with the nose
pad. The second sensor of the HMD can be positioned at a temple part and can sense
whether a head of the user is contacted with the temple.
[0127] If the first contact and the second contact are detected by the first sensor and
the second sensor, respectively, the HMD stores video information using the camera
unit and can store audio information in a manner of activating the audio input unit.
In particular, the HMD operates in the wearing mode and can make one video in a manner
of combining the stored video information with the audio information.
[0128] The HMD can determine whether the first contact of the first sensor is released [S120].
If the first contact of the first sensor is maintained, the HMD maintains the stored
video information and the audio information and can operate in the wearing mode.
[0129] If the first contact of the first sensor is released, the HMD can selectively store
the video information except the audio information [S130]. If the first contact of
the first sensor is released, the HMD can operate in the mute mode. The HMD can store
the video information using the camera unit. Unlike this, the HMD stop storing the
audio information and can inactivate the activated audio input unit. A video captured
in the mute mode can include the video information of which the audio information
is excluded.
[0130] The HMD can determine whether a gaze is detected by a third sensor [S140]. This step
may be optional according to embodiment. The third sensor can be positioned at the
temple part or the display part of the HMD. The HMD can detect whether a user is able
to check displayed video information using the third sensor. In this case, the displayed
video may correspond to video information of a video currently captured. If the user
is able to check the displayed video information, the HMD can maintain the mute mode
and can selectively store the video information except the audio information.
[0131] If the user is unable to check the displayed video information, i.e., if a gaze of
the user is not detected by the third sensor, the HMD can temporarily stop capturing
a video [S150]. This step may be optional according to embodiment. The HMD switches
to a third mode and can inactivate not only the audio input unit but also the camera
unit. In other word, if the user is unable to check the video information currently
captured via the display unit, the HMD can stop capturing the video information in
a manner of inactivating the camera unit. Consequently, the HMD can temporarily stop
capturing a video in a manner of temporarily stop storing the video information and
the audio information.
[0132] The HMD can determine whether the second contact of the second sensor is released
[S160]. The HMD can sense whether a head of a user is contacted with the temple part
of the HMD using the second sensor. If the second contact of the second sensor is
maintained, the HMD can maintain the display off mode. In this case, if a gaze of
the user is detected by the third sensor, the HMD may switch to the mute mode. In
this case, if both the first contact of the first sensor and the gaze of the user
of the third sensor are detected, the HMD can switch to the wearing mode.
[0133] If a contact of the second sensor is released, the HMD can terminate a video capturing
[S170]. After terminating the video capturing, the HMD can switch to a standby state.
[0134] FIG. 9 is a flowchart for a video capturing according to a different embodiment of
the present specification. In case of capturing a video, the HMD can operate in two
kinds of mode. In a wearing mode, the HMD can store video information and audio information.
In a pause mode, the HMD can temporarily stop storing the audio information and the
video information.
[0135] The HMD can perform a video capturing [S210]. When a video capturing is performed,
the HMD can detect a first contact and a second contact using a first sensor and a
second sensor, respectively. The first sensor of the HMD can be positioned at a nose
pad part of the HMD and can sense whether a nose of a user is contacted with the nose
pad. The second sensor of the HMD can be positioned at a temple part and can sense
whether a head of the user is contacted with the temple.
[0136] If the first contact and the second contact are detected by the first sensor and
the second sensor, respectively, the HMD stores video information using the camera
unit and can store audio information in a manner of activating the audio input unit.
In particular, the HMD operates in the wearing mode and can make one video in a manner
of combining the stored video information with the audio information.
[0137] The HMD can determine whether the first contact of the first sensor is released [S220].
If the first contact of the first sensor is maintained, the HMD maintains the stored
video information and the audio information and can operate in the wearing mode.
[0138] If the first contact of the first sensor is released, the HMD can temporarily stop
capturing a video [S230]. The HMD switches to the pause mode and can inactivate not
only the audio input unit but also the camera unit. In other word, if a contact between
a nose of a user and the nose pad of the HMD is released because the user lifted up
the HMD, the HMD can temporarily stop capturing a video. In particular, the HMD can
temporarily stop capturing a video in a manner of temporarily stop storing the video
information and the audio information.
[0139] The HMD can determine whether the second contact of the second sensor is released
[S240]. The HMD can sense whether a head of a user is contacted with the temple part
of the HMD using the second sensor. If the second contact of the second sensor is
maintained, the HMD can maintain the pause mode. In this case, if the first contact
is detected by the first sensor, the HMD may switch to the wearing mode.
[0140] If a contact of the second sensor is released, the HMD can terminate a video capturing
[S250]. After terminating the video capturing, the HMD can switch to a standby mode.
[0141] As mentioned in the foregoing description, the HMD according to the present specification
detects a contact between a user and each part using sensors positioned at the each
part. And, the HMD can switch a mode of the HMD according to a detected result. By
doing so, the HMD can switch the mode of the HMD without inputting a separate control
input.
[0142] It will be apparent to those skilled in the art that various modifications and variations
can be made in the present specification without departing from the spirit or scope
of the inventions. Thus, it is intended that the present specification covers the
modifications and variations of this invention provided they come within the scope
of the appended claims and their equivalents.
Mode for the Invention
[0143] Various embodiments have been described in the best mode for carrying out the invention.
[0144] It will be apparent to those skilled in the art that various modifications and variations
can be made in the present invention. Thus, it is intended that the present invention
covers the modifications and variations of this invention provided they come within
the scope of the appended claims.
Industrial Applicability
[0145] As described above, the present invention is totally or partially applicable to electronic
devices.
1. A head mounted display (10), HMD, comprising:
a display unit configured to display a digital image;
an audio input unit configured to receive an audio signal;
an audio output unit configured to convert an electric signal to an audio signal and
output the audio signal;
a first sensor (15) configured to detect a first contact, wherein the first sensor
(15) is positioned at a nose pad (14) of the HMD (10), and detects the first contact
when the nose pad (14) of the HMD (10) contacts a first designated area of a user's
head; and
a second sensor (16) configured to detect a second contact, wherein the second sensor
(16) is positioned at a temple (12) of the HMD (10), and detects the second contact
when the temple (12) of the HMD (10) contacts a second designated area of the user's
head;
characterized in that a controller (105) is configured to:
activate a wearing mode if the first contact and the second contact are detected,
wherein the audio input unit and the audio output unit are switched to an active state
in the wearing mode,
activate a mute mode if the first contact is not detected and the second contact is
detected, wherein the audio input unit is switched to an inactive state and the audio
output unit is maintained in the active state in the mute mode,
activate a non-wearing mode if the first contact and the second contact are not detected,
wherein the audio input unit and the audio output unit are switched to an inactive
state in the non-wearing mode,
switch the wearing mode to the mute mode if the first contact is not detected in the
wearing mode,
switch the mute mode to the wearing mode if the first contact is detected in the mute
mode,
switch the mute mode to the non-wearing mode if the second contact is not detected
in the mute mode, and
switch the non-wearing mode to the wearing mode if the first contact and the second
contact are detected in the non-wearing mode.
2. The HMD (10) of claim 1, wherein the first contact corresponds to a contact between
the first sensor (15) and a nose of a user and wherein the second contact corresponds
to a contact between the second sensor (16) and a side of a face of the user.
3. The HMD (10) of claim 1 or claim 2, further comprising a third sensor (17) configured
to detect a gaze of a user, wherein if the first contact is not detected, the second
contact is detected, and the gaze of the user is not detected, the controller (105)
is further configured to activate a mute and display off mode and inactivate the audio
input unit and the display unit.
4. The HMD (10) of any one of claims 1 to 3, wherein the temple (12) of the HMD (10)
comprises a left temple and a right temple and wherein the second sensor (16) is positioned
at the left temple and the right temple, respectively, and wherein if a contact is
detected by the second sensors (16) positioned at the left temple and the right temple,
the controller (105) is further configured to determine that the second contact is
detected.
5. The HMD of any one of claim 1 to 4, wherein the second sensor (16) is positioned at
a point adjacent to the audio output unit in the temple (12).
6. The HMD (10) of any one of claims 1 to 5, wherein the first sensor (15) is configured
to measure a first distance to an object of the first contact and wherein the controller
(105) is further configured to control a mute level according to the measured first
distance.
7. The HMD (10) of claim 6, wherein if the measured first distance is equal to or greater
than a first threshold, the controller (105) is further configured to inactivate the
audio output unit.
8. The HMD (10) of claim 6, further comprising a camera unit (104) configured to capture
the digital image, wherein if the measured first distance is equal to or greater than
a second threshold, the controller (105) is further configured to stop capturing the
digital image.
9. The HMD (10) of any one of claims 1 to 8, further comprising: a third sensor (17)
configured to detect a third contact, wherein the third sensor (17) is at a point
adjacent to the display unit in the temple (12).
10. The HMD (10) of claim 9,
wherein if the third contact is detected and the first contact is no longer detected
after detecting the first contact and the second contact during a voice call, the
controller (105) is further configured to inactivate the audio input unit and the
audio output unit, and
wherein if the third contact is not detected and the first contact is no longer detected,
the controller (105) is further configured to inactivate the audio input unit.
11. The HMD (10) of claim 9,
wherein the temple (12) of the HMD (10) comprises a left temple and a right temple,
wherein the third sensor (17) is positioned at the left temple and the right temple,
respectively,
wherein if the third contact is detected by the third sensor (17) positioned at the
left temple and the first contact is no longer detected, the controller (105) is further
configured to inactivate the audio input unit,
wherein if the third contact is detected by the third sensor (17) positioned at the
right temple and the first contact is no longer detected, the controller (105) is
further configured to inactivate the audio input unit and the audio output unit, and
wherein if the third contact is detected by the third sensor (17) positioned at the
left temple and the right temple, and the first contact is no longer detected, the
controller (105) is further configured to inactivate the display unit, the audio input
unit, and the audio output unit.
12. The HMD (10) of any one of claims 1 to 4 and 6 to 11, further comprising a third sensor
(17) configured to detect a third contact, wherein the third sensor (17) is positioned
at a bridge (17) of the HMD (10), wherein if the third contact is detected by the
third sensor (17), the controller (105) is further configured to toggle whether the
audio input unit is activated.
13. The HMD (10) of any one of claims 1 to 4 and 6 to 12, further comprising a camera
unit (104); and a third sensor (17) configured to detect a gaze of a user,
wherein if the HMD (10) captures a video containing video information and audio information,
the controller (105) is further configured to:
store both the video information and the audio information in the wearing mode,
selectively store the video information in the mute mode,
terminate capturing the video in the non-wearing mode, and.
activate a pause mode which temporarily stops storing the video information and the
audio information if the first contact is not detected, the second contact is detected,
and the gaze of the user is not detected.
14. A method of controlling a head mounted display (10), HMD, comprising the steps of:
detecting, by a first sensor (15) of the HMD (10), a first contact when a nose pad
(14) of the HMD (10) contacts a first designated area of a user's head; and
detecting, by a second sensor (16) of the HMD (10), a second contact when a temple
(12) of the HMD (10) contacts a second designated area of the user's head;
characterized in that the method further comprises the steps of:
operating in a wearing mode to activate an audio input unit and an audio output unit,
if the first contact and the second contact are detected;
operating in a mute mode to inactivate the audio input unit and activate an audio
output unit, if the first contact is not detected and the second contact is detected;
and
operating in a non-wearing mode to inactivate the audio input unit and the audio output
unit, if the first contact and the second contact are not detected,
wherein if the first contact is not detected in the wearing mode, the method switches
the wearing mode to the mute mode,
wherein if the first contact is detected in the mute mode, the method switches the
mute mode to the wearing mode,
wherein if the second contact is not detected in the mute mode, the method switches
the mute mode to the non-wearing mode, and
wherein if the first contact and the second contact are detected in the non-wearing
mode, the method switches the non-wearing mode to the wearing mode.
1. Kopfmontierte Anzeige (10), HMD, umfassend:
eine Anzeigeeinheit, die eingerichtet ist, um ein digitales Bild anzuzeigen;
eine Audioeingabeeinheit, die eingerichtet ist, um ein Audiosignal zu empfangen;
eine Audioausgabeeinheit, die eingerichtet ist, um ein elektrisches Signal in ein
Audiosignal umzuwandeln und das Audiosignal auszugeben;
einen ersten Sensor (15), der eingerichtet ist, um eine erste Berührung zu erkennen,
wobei der erste Sensor (15) an einer Nasenauflage (14) der HMD (10) angeordnet ist
und die erste Berührung erkennt, wenn die Nasenauflage (14) der HMD (10) einen ersten
ausgewiesenen Bereich eines Kopfes eines Benutzers berührt; und
einen zweiten Sensor (16), der eingerichtet ist, um eine zweite Berührung zu erkennen,
wobei der zweite Sensor (16) an einem Brillenbügel (12) der HMD (10) angeordnet ist
und die zweite Berührung erkennt, wenn der Brillenbügel (12) der HMD (10) einen zweiten
ausgewiesenen Bereich des Kopfes des Benutzers berührt;
dadurch gekennzeichnet, dass eine Steuerung (105) eingerichtet ist zum:
Aktivieren eines Trage-Modus, wenn die erste Berührung und die zweite Berührung erkannt
werden, wobei die Audioeingabeeinheit und die Audioausgabeeinheit im Trage-Modus in
einen aktiven Zustand geschaltet werden,
Aktivieren eines Stummschaltmodus, wenn die erste Berührung nicht erkannt wird und
die zweite Berührung erkannt wird, wobei die Audioeingabeeinheit in einen inaktiven
Zustand geschaltet wird und die Audioausgabeeinheit im Stummschaltmodus im aktiven
Zustand gehalten wird,
Aktivieren eines Nicht-Trage-Modus, wenn die erste Berührung und die zweite Berührung
nicht erkannt werden, wobei die Audioeingabeeinheit und die Audioausgabeeinheit im
Nicht-Trage-Modus in einen inaktiven Zustand geschaltet werden,
Schalten des Trage-Modus in den Stummschaltmodus, wenn die erste Berührung im Trage-Modus
nicht erkannt wird,
Schalten des Stummschaltmodus in den Trage-Modus, wenn die erste Berührung im Stummschaltmodus
erkannt wird,
Schalten des Stummschaltmodus in den Nicht-Trage-Modus, wenn die zweite Berührung
im Stummschaltmodus nicht erkannt wird und
Schalten des Nicht-Trage-Modus in den Trage-Modus, wenn die erste Berührung und die
zweite Berührung im Nicht-Trage-Modus erkannt werden.
2. HMD (10) nach Anspruch 1, wobei die erste Berührung einer Berührung zwischen dem ersten
Sensor (15) und einer Nase eines Benutzers entspricht und wobei die zweite Berührung
einer Berührung zwischen dem zweiten Sensor (16) und einer Seite eines Gesichts des
Benutzers entspricht.
3. HMD (10) nach Anspruch 1 oder Anspruch 2, ferner umfassend einen dritten Sensor (17),
der eingerichtet ist, um einen Blick eines Benutzers zu erkennen, wobei, wenn die
erste Berührung nicht erkannt wird, die zweite Berührung erkannt wird und der Blick
des Benutzers nicht erkannt wird, die Steuerung (105) ferner eingerichtet ist, um
einen Stummschalt- und Anzeige-Aus-Modus zu aktivieren und die Audioeingabeeinheit
und die Anzeigeeinheit zu deaktivieren.
4. HMD (10) nach einem der Ansprüche 1 bis 3, wobei der Brillenbügel (12) der HMD (10)
einen linken Brillenbügel und einen rechten Brillenbügel umfasst, wobei der zweite
Sensor (16) jeweils an dem linken Brillenbügel und dem rechten Brillenbügel angeordnet
ist und wobei, wenn eine Berührung von den zweiten Sensoren (16), die an dem linken
Brillenbügel und dem rechten Brillenbügel angeordnet sind, erkannt wird, die Steuerung
(105) ferner eingerichtet ist, um zu bestimmen, dass die zweite Berührung erkannt
wird.
5. HMD nach einem der Ansprüche 1 bis 4, wobei der zweite Sensor (16) an einem Punkt
neben der Audioausgabeeinheit in dem Brillenbügel (12) angeordnet ist.
6. HMD (10) nach einem der Ansprüche 1 bis 5, wobei der erste Sensor (15) eingerichtet
ist, um einen ersten Abstand zu einem Objekt der ersten Berührung zu messen, und wobei
die Steuerung (105) ferner eingerichtet ist, um einen Stummschaltpegel gemäß dem gemessenen
ersten Abstand zu steuern.
7. HMD (10) nach Anspruch 6, wobei, wenn der gemessene erste Abstand gleich oder größer
als ein erster Schwellenwert ist, die Steuerung (105) ferner eingerichtet ist, um
die Audioausgabeeinheit zu deaktivieren.
8. HMD (10) nach Anspruch 6, ferner umfassend eine Kameraeinheit (104), die eingerichtet
ist, um ein digitales Bild aufzunehmen, wobei, wenn der gemessene erste Abstand gleich
oder größer als ein zweiter Schwellenwert ist, die Steuerung (105) ferner eingerichtet
ist, um die Aufnahme des digitalen Bilds zu beenden.
9. HMD (10) nach einem der Ansprüche 1 bis 8, ferner umfassend einen dritten Sensor (17),
der eingerichtet ist, um eine dritte Berührung zu erkennen, wobei sich der dritte
Sensor (17) an einem Punkt neben der Anzeigeeinheit in dem Brillenbügel (12) befindet.
10. HMD (10) nach Anspruch 9,
wobei, wenn die dritte Berührung erkannt wird und die erste Berührung nicht mehr erkannt
wird, nachdem die erste Berührung und die zweite Berührung während eines Sprachanrufs
erkannt wurden, die Steuerung (105) ferner eingerichtet ist, um die Audioeingabeeinheit
und die Audioausgabeeinheit zu deaktivieren, und
wobei, wenn die dritte Berührung nicht erkannt wird und die erste Berührung nicht
mehr erkannt wird, die Steuerung (105) ferner eingerichtet ist, um die Audioeingabeeinheit
zu deaktivieren.
11. HMD (10) nach Anspruch 9,
wobei der Brillenbügel (12) der HMD (10) einen linken Brillenbügel und einen rechten
Brillenbügel umfasst,
wobei der dritte Sensor (17) jeweils an dem linken Brillenbügel und dem rechten Brillenbügel
angeordnet ist,
wobei, wenn die dritte Berührung durch den am linken Brillenbügel angeordneten dritten
Sensor (17) erkannt wird und die erste Berührung nicht mehr erkannt wird, die Steuerung
(105) ferner eingerichtet ist, um die Audioeingabeeinheit zu deaktivieren,
wobei, wenn die dritte Berührung von dem an dem rechten Brillenbügel angeordneten
dritten Sensor (17) erkannt wird und die erste Berührung nicht mehr erkannt wird,
die Steuerung (105) ferner eingerichtet ist, um die Audioeingabeeinheit und die Audioausgabeeinheit
zu deaktivieren, und
wobei, wenn die dritte Berührung von dem an dem linken Brillenbügel und dem rechten
Brillenbügel angeordneten dritten Sensor (17) erkannt wird und die erste Berührung
nicht mehr erkannt wird, die Steuerung (105) ferner eingerichtet ist, um die Anzeigeeinheit,
die Audioeingabeeinheit und die Audioausgabeeinheit zu deaktivieren.
12. HMD (10) nach einem der Ansprüche 1 bis 4 und 6 bis 11, ferner umfassend einen dritten
Sensor (17), der eingerichtet ist, um eine dritte Berührung zu erkennen, wobei der
dritte Sensor (17) an einem Steg (17) der HMD (10) angeordnet ist, wobei, wenn die
dritte Berührung von dem dritten Sensor (17) erkannt wird, die Steuerung (105) ferner
eingerichtet ist, um umzuschalten, ob die Audioeingabeeinheit aktiviert ist.
13. HMD (10) nach einem der Ansprüche 1 bis 4 und 6 bis 12, ferner umfassend eine Kameraeinheit
(104) und einen dritten Sensor (17), der eingerichtet ist, um einen Blick eines Benutzers
zu erfassen,
wobei, wenn die HMD (10) ein Video aufnimmt, das Videoinformation und Audioinformation
umfasst, die Steuerung (105) ferner eingerichtet ist zum:
Speichern der Videoinformation als auch der Audioinformation im Trage-Modus, wahlweisen
Speichern der Videoinformation im Stummschaltmodus, Beenden der Aufnahme des Videos
im Nicht-Trage-Modus, und
Aktivieren eines Pause-Modus, der die Speicherung der Videoinformation und der Audioinformation
vorübergehend anhält, wenn die erste Berührung nicht erkannt wird, die zweite Berührung
erkannt wird und der Blick des Benutzers nicht erkannt wird.
14. Verfahren zum Steuern einer kopfmontierten Anzeige (10), HMD, umfassend die Schritte:
Erkennen einer ersten Berührung durch einen ersten Sensor (15) der HMD (10), wenn
eine Nasenauflage (14) der HMD (10) einen ersten ausgewiesenen Bereich eines Kopfes
eines Benutzers berührt; und
Erkennen einer zweiten Berührung durch einen zweiten Sensor (16) der HMD (10), wenn
ein Brillenbügel (12) der HMD (10) einen zweiten ausgewiesenen Bereich des Kopfes
des Benutzers berührt;
dadurch gekennzeichnet, dass das Verfahren ferner die folgenden Schritte umfasst:
Arbeiten in einem Trage-Modus, um eine Audioeingabeeinheit und eine Audioausgabeeinheit
zu aktivieren, wenn die erste Berührung und die zweite Berührung erkannt werden;
Arbeiten in einem Stummschaltmodus, um die Audioeingabeeinheit zu deaktivieren und
eine Audioausgabeeinheit zu aktivieren, wenn die erste Berührung nicht erkannt wird
und die zweite Berührung erkannt wird; und
Arbeiten in einem Nicht-Trage-Modus, um die Audioeingabeeinheit und die Audioausgabeeinheit
zu deaktivieren, wenn die erste Berührung und die zweite Berührung nicht erkannt werden,
wobei, wenn die erste Berührung im Trage-Modus nicht erkannt wird, das Verfahren den
Trage-Modus in den Stummschaltmodus schaltet,
wobei, wenn die erste Berührung im Stummschaltmodus erkannt wird, das Verfahren den
Stummschaltmodus in den Trage-Modus schaltet,
wobei, wenn die zweite Berührung im Stummschaltmodus nicht erkannt wird, das Verfahren
den Stummschaltmodus in den Nicht-Trage-Modus schaltet, und
wobei, wenn die erste Berührung und die zweite Berührung im Nicht-Trage-Modus erkannt
werden, das Verfahren den Nicht-Trage-Modus in den Trage-Modus schaltet.
1. Visiocasque (10), HMD, comprenant :
une unité d'affichage conçue pour afficher une image numérique ;
une unité d'entrée audio conçue pour recevoir un signal audio ;
une unité de sortie audio conçue pour convertir un signal électrique en un signal
audio et émettre le signal audio ;
un premier capteur (15) conçu pour détecter un premier contact, le premier capteur
(15) étant positionné sur une plaquette (14) du HMD (10), et détecte le premier contact
lorsque la plaquette (14) du HMD (10) entre en contact avec une première zone désignée
d'une tête d'utilisateur ; et
un second capteur (16) conçu pour détecter un second contact, le second contact (16)
étant positionné sur une branche (12) du HMD (10), et détecte le second contact lorsque
la branche (12) du HMD (10) entre en contact avec une seconde zone désignée de la
tête de l'utilisateur ;
caractérisé en ce qu'un organe de commande (105) est conçu pour :
activer un mode porté si le premier contact et le second contact sont détectés, l'unité
d'entrée audio et l'unité de sortie audio étant commutées dans un état actif dans
le mode porté,
activer un mode silencieux si le premier contact n'est pas détecté et le second contact
n'est pas détecté, l'unité d'entrée audio étant commutée dans un état inactif et l'unité
de sortie audio étant maintenue dans l'état actif dans le mode silencieux,
activer un mode non porté si le premier contact et le second contact ne sont pas détectés,
l'unité d'entrée audio et l'unité de sortie audio étant commutées dans un état inactif
dans le mode non porté,
passer du mode porté au mode silencieux si le premier contact n'est pas détecté dans
le mode porté,
passer du mode silencieux au mode porté si le premier contact est détecté dans le
mode muet,
passer du mode silencieux au mode non porté si le second contact n'est pas détecté
dans le mode silencieux, et
passer du mode non porté au mode porté si le premier contact et le second contact
sont détectés dans le mode non porté.
2. HMD (10) selon la revendication 1, le premier contact correspondant à un contact entre
le premier capteur (15) et un nez d'un utilisateur et le deuxième contact correspondant
à un contact entre le deuxième capteur (16) et un côté d'un visage de l'utilisateur.
3. HMD (10) selon la revendication 1 ou la revendication 2, comprenant en outre un troisième
capteur (17) conçu pour détecter un regard d'un utilisateur, si le premier contact
n'est pas détecté, que le second contact est détecté, et que le regard de l'utilisateur
n'est pas détecté, l'organe de commande (105) étant configuré en outre pour activer
un mode silencieux et affichage éteint et pour désactiver l'unité d'entrée audio et
l'unité d'affichage.
4. HMD (10) selon l'une quelconque des revendications 1 à 3, la branche (12) du HMD (10)
comprenant une branche gauche et une branche droite et le deuxième capteur (16) étant
positionné sur la branche gauche et la branche droite, respectivement, et si un contact
est détecté par les deuxièmes capteurs (16) positionnés sur la branche gauche et la
branche droite, l'organe de commande (105) étant configuré en outre pour déterminer
que le second contact est détecté.
5. HMD (10) selon l'une quelconque des revendications 1 à 4, le second capteur (16) étant
positionné sur un point adjacent à l'unité de sortie audio dans la branche (12).
6. HMD (10) selon l'une quelconque des revendications 1 à 5, le premier capteur (15)
étant conçu pour mesurer une première distance par rapport à un objet du premier contact
et l'organe de commande (105) étant en outre conçu pour commander un niveau silencieux
selon la première distance mesurée.
7. HMD (10) selon la revendication 6, si la première distance mesurée étant supérieure
ou égale à un premier seuil, l'organe de commande (105) étant configuré pur désactiver
l'unité de sortie audio.
8. HMD (10) selon la revendication 6, comprenant en outre une unité de caméra (104) conçue
pour capturer l'image numérique, si la première distance mesurée est supérieure ou
égale à un second seuil, l'organe de commande (105) étant configuré en outre pour
arrêter la capture de l'image numérique.
9. HMD (10) selon l'une quelconque des revendications 1 à 8, comprenant en outre : un
troisième capteur (17) conçu pour détecter un troisième contact, le troisième capteur
(17) étant à un point adjacent à l'unité d'affichage dans la branche (12).
10. HMD (10) selon la revendication 9, si le troisième contact est détecté et que le premier
contact n'est plus détecté après la détection du premier contact et du second contact
pendant un appel vocal, l'organe de commande (105) étant en outre configuré pour désactiver
l'unité d'entrée audio et l'unité de sorite audio, et
si le troisième contact n'est pas détecté et que le premier contact n'est plus détecté,
l'organe de commande (105) étant en outre configuré pour désactiver l'unité d'entrée
audio.
11. HMD (10) selon la revendication 9,
la branche (12) du HMD (10) comprenant une branche gauche et une branche droite, le
troisième capteur (17) étant positionné sur la branche gauche et sur la branche droite,
respectivement,
si le troisième contact est détecté par le troisième capteur (17) positionné sur la
branche gauche et que le premier contact n'est plus détecté, l'organe de commande
(105) étant en outre configuré pour désactiver l'unité d'entrée audio,
si le troisième contact est détecté par le troisième capteur (17) positionné sur la
branche droite et que le premier contact n'est plus détecté, l'organe de commande
(105) étant en outre configuré pour désactiver l'unité d'entrée audio et l'unité de
sortie audio, et
si le troisième contact est détecté par le troisième capteur (17) positionné sur la
branche gauche et sur la branche droite, et que le premier contact n'est plus détecté,
l'organe de commande (105) étant en outre configuré pour désactiver l'unité d'affichage,
l'unité d'entrée audio et l'unité de sortie audio.
12. HMD (10) selon l'une quelconque des revendications 1 à 4 et 6 à 11, comprenant en
outre un troisième capteur (17) configuré pour détecter un troisième contact, le troisième
capteur (17) étant positionné sur un pont (17) du HMD (10), si le troisième contact
est détecté par le troisième capteur (17), l'organe de commande (105) étant en outre
configuré pour commuter si l'unité d'entrée audio est activée.
13. HMD (10) selon l'une quelconque des revendications 1 à 4 et 6 à 12, comprenant en
outre une unité de caméra (104) ; et un troisième capteur (17) configuré pour détecter
un regard d'un utilisateur, si le HMD (10) capture une vidéo contenant des informations
vidéo et des informations audio, l'organe de commande (105) étant en outre configuré
pour :
mettre en mémoire à la fois les informations vidéo et les informations audio dans
le mode porté,
mettre en mémoire sélectivement les informations vidéo dans le mode silencieux, achever
la capture de la vidéo dans le mode non porté, et
activer un mode pause qui arrête temporairement la mise en mémoire des informations
vidéo et des informations audio si le premier contact n'est pas détecté, que le second
contact est détecté et que le regard de l'utilisateur n'est pas détecté.
14. Procédé de commande d'un visiocasque (10), HMD, comprenant les étapes consistant à
:
détecter, par un premier capteur (15) du HMD (10), un premier contact lorsqu'une plaquette
(14) du HMD (10) entre en contact avec une première zone désignée d'une tête d'utilisateur
; et
détecter, par un deuxième capteur (16) du HMD (10), un second contact lorsqu'une branche
(12) du HMD (10) entre en contact avec une seconde zone désignée de la tête d'utilisateur
;
caractérisé en ce que le procédé comprenant en outre les étapes consistant à :
fonctionner en un mode porté pour activer une unité d'entrée audio et une unité de
sortie audio, si le premier contact et le second contact sont détectés ;
fonctionner dans un mode silencieux pour désactiver l'unité d'entrée audio et activer
l'unité de sortie audio si le premier contact n'est pas détecté et que le second contact
est détecté ; et
fonctionner dans un mode non porté pour désactiver l'unité d'entrée audio et l'unité
de sortie audio, si le premier contact et le second contact ne sont pas détectés,
si le premier contact n'est pas détecté dans le mode porté, le procédé commutant le
mode porté vers le mode silencieux,
si le premier contact est détecté dans le mode silencieux, le procédé commutant le
mode muet vers le mode porté,
si le second contact n'est pas détecté dans le mode silencieux, le procédé commutant
le mode silencieux vers le mode non porté, et
si le premier contact et le second contact sont détectés dans le mode non porté, le
procédé commutant le mode non porté vers le mode porté.